The present invention is related to a switch of a fluid passage, and more particularly to a linearly forcible switch-locating mechanism of a fluid passage.
There are various conventional switch-locating mechanisms of fluid passages, such as faucets and valves of water pipes, gas pipes and oil pipes. Such switch is generally rotationally forced to drive a gate disposed inside the valve for opening/closing a fluid outlet. Such rotational measure is often applied to industrial large-size pipeline to save strength. However, in the case that a rotary switch is applied to a domestic small-size fluid passage, a user often needs to rotate the switch many times for shutting off/turning on the flow. It is quite time-consuming and troublesome to do such work.
It is therefore a primary object of the present invention to provide a switch-locating mechanism of a fluid passage. By means of pressing the switch-locating mechanism, the fluid passage can be blocked/unblocked.
It is a further object of the present invention to provide the above switch-locating mechanism of the fluid passage, which is applicable to a sprinkling gun. With the switch-locating mechanism, a user can operate the sprinkling gun and shut off/turn on the water flow with single hand.
According to the above objects, the switch-locating mechanism of the fluid passage of the present invention includes a fluid passage including a fluid inlet, a fluid outlet and a valve section disposed between the fluid inlet and the fluid outlet. A force application section is arranged at one end of the valve section for driving the valve section. The switch-locating mechanism is drivingly connected with the valve section and includes a first block body disposed in the fluid passage between the valve section and the force application section and having a first slide section. The switch-locating mechanism further includes a second block body drivingly connected with the first block body and having a second slide section slidably engaged with the first slide section. The second block body is drivingly connected with the force application section. The force application section includes a resilient member for providing a resilient force. When an external force is applied to the force application section, the valve section is driven. The direction of the resilient force provided by the resilient member is reverse to the external force.
The present invention can be best understood through the following description and accompanying drawings wherein:
Please refer to
The fluid passage 12 includes a valve section 21, a fluid inlet 23 and a fluid outlet 24. The fluid passage 12 is arranged on a sprinkling gun. The fluid inlet 23 and the fluid outlet 24 are respectively positioned at two ends of the fluid passage 12.
The valve section 21 is disposed between the fluid inlet 23 and the fluid outlet 24. The valve section 21 is a rod member with a certain length. The valve section 21 passes through the fluid passage 12.
The force application section 13 is arranged at one end of the valve section 21. When an external force is manually applied to the force application section 13, the valve section 21 is driven. The force application section 13 includes a coiled spring 32 positioned between the valve section 21 and the fluid passage 12. The coiled spring 32 serves to provide a resilient force in a direction reverse to the external force for driving the valve section 21.
The switch-locating mechanism 14 is drivingly connected with the valve section 21, whereby the other end of the valve section 21 is switched between a first valve-closed position and a second valve-opened position corresponding to the fluid outlet 24. The switch-locating mechanism 14 includes a first block body 42 and a second block body 44.
The first block body 42 is disposed in the fluid passage 12 between the valve section 21 and the force application section 22. The first block body 42 has a first slide section 421.
The first block body 42 is a hollow cylindrical body fixedly disposed on inner wall face of the fluid passage 12 about a rotary axis. The first slide section 421 is formed of a saw-tooth slide way annularly disposed on outer circumference of the first block body 42. The slide way has two lateral faces 4211. One of the lateral faces 4211 closer to the fluid outlet 24 has at least two recesses 4211A, 4211B in different positions in the direction of the rotary axis.
The second block body 44 is a cylindrical body fitted in the first block body 42 and rotatable about the rotary axis. The second block body 44 has a second slide section 441. One end of the second block body 44 abuts against the valve section 21. When the force application section 22 drives the valve section 21, the second block body 44 is also driven. In other words, the second block body 44 is drivingly connected with the force application section 22.
The second slide section 441 is a pair of bosses 4411 projecting from outer circumference of the second block body 44. The second slide section 441 is slidably engaged with the first slide section 421.
By means of the guide slopes and the recesses 4211A, 4211B of the first slide section 421, when the external force and the resilient force alternately drive the second block body 44, the second block body 44 is rotated in one single direction and reciprocally moved. Accordingly, the second block body 44 is angularly displaced and axially moved so that the valve section 21 is switched between the first and second positions and located to shut off or turn on the water flow.
According to the above arrangement, two leakproof washers 211 are respectively disposed between two ends of the valve section 21 and the fluid passage 12 for achieving better watertight effect.
A handheld handle 25 extends from the position of the fluid inlet 23 of the fluid passage 12. The force application section 13 includes a first lever unit 131 mounted on the handle 25. Accordingly, a user can naturally hold the handle 25 with one hand and the part of the hand between the thumb and the index finger can exert a force on the first lever unit 131 to shut off or turn on the water flow. This meets the requirements of human engineering.
Alternatively, the fluid passage 12 can be applied to a handle of a sprinkling gun, a water pipe, a gas pipe or the like.
Referring to
A user's finger can press the force application section 13 to exert a force thereon.
The second block body 44 is a hollow block body fixedly fitted through outer wall of the fluid passage 12 about a rotary axis. The second slide section 441 is formed of a pair of bosses 4411 projecting from inner wall face of the second block body 44. The bosses 4411 pass through the fluid passage 12.
The first block body 42 is a cylindrical body fitted in the second block body 44 and rotatable about the rotary axis. The first slide section 421 is slidably engaged with the second slide section 441.
One end of the first block body 42 abuts against the other end of the valve section 21. The force application section 13 is disposed at the other end of the first block body 42. When a force is applied to the force application section 13, both the first block body 42 and the valve section 21 are driven. In other words, the valve section 21 is drivingly connected with the force application section 22. The coiled spring 32 provides resilient force for driving the first block body 42.
The external force and the resilient force alternately drive the first block body 42, whereby the first block body 42 is rotated in one single direction and reciprocally moved. Accordingly, the first block body 42 is angularly displaced and axially moved so that the valve section 21 is switched between the first and second positions and located to shut off or turn on the water flow.
According to the above arrangement, two leakproof washers 211 are respectively disposed between two ends of the valve section 21 and the fluid passage 12 for achieving better watertight effect.
In this embodiment, the force application section 13 is a press button fixedly connected with the first block body 42. Accordingly, the force application section 13 is rotatable with the first block body 42. At least one mark is arranged on outer face of the force application section 13 to indicate the flow or on/off state for a user to conveniently observe.
Referring to
The force application section 13 is a rod member with a certain length. One end of the rod member is reciprocally movably extended into the fluid passage 12. The force application section 13 includes a second lever unit 132 arranged outside the fluid passage 12. The application force end of the lever unit 132 is connected with outer side of the second block body 44. The other end of the force application section 13 is connected with or abuts against the resistance end of the lever unit 132. The coiled spring 32 provides a resilient force for driving the second block body 44.
The first block body 42 is a cylindrical body mounted on outer wall of the fluid passage 12 and rotatable about the rotary axis. The first slide section 421 has two lateral faces 4211. One of the lateral faces 4211 farther from the fluid passage 12 has at least two recesses 4211A, 4211B in different positions in the direction of the rotary axis.
The second block body 44 is a hollow cylindrical body fitted around the first block body 42 about the rotary axis. The second slide section 441 is a pair of bosses 4411 projecting from inner circumference of the second block body 44.
When the external force and the resilient force alternately drive the second block body 44, the second block body 44 is reciprocally moved and the first block body 42 is rotated in one single direction. Accordingly, the second block body 44 is axially displaced so that the valve section 21 is switched between the first and second positions to shut off or turn on the water flow. The valve section 21 is driven by the water flow to move the first valve-closed position.
One end of the valve section 21 corresponding to the fluid outlet 24 is formed as a conic body. The other end of the valve section 21 is formed with a first guide slope 212. One end of the force application section 13 is formed with a second guide slope 133 corresponding to the first guide slope 212. Accordingly, the force application section 13 is able to more conformably drive the valve section 21.
A leakproof washer 213 is disposed around the conic body. Another leakproof washer 134 is disposed between the force application section 13 and the fluid passage 12 for achieving better watertight effect.
Moreover, in the case that the first slide section 421 has more than three recesses in different positions in the direction of the rotary axis, one of the recesses serves to make the valve section 21 located in the first valve-closed position, while the other recesses serve to define different gaps between the valve section 21 and the fluid outlet 24. Accordingly, the present invention can controllably provide different flows.
The above embodiments are only used to illustrate the present invention, not intended to limit the scope thereof. Many modifications of the above embodiments can be made without departing from the spirit of the present invention.
Number | Date | Country | Kind |
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096205395 | Apr 2007 | TW | national |